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    • 1. 发明申请
    • Method and system for forwarding calls to a secondary wireless network using a multi-protocol wireless device
    • 使用多协议无线设备将呼叫转发到辅助无线网络的方法和系统
    • US20070099613A1
    • 2007-05-03
    • US11263162
    • 2005-10-31
    • John BurganEdward DiazTal Mor
    • John BurganEdward DiazTal Mor
    • H04Q7/20
    • H04M3/42246H04M3/54
    • A multi-protocol phone call routing system (10) and method (40) can include a wireless transceiver (22) capable of operating on a primary wireless network (24) and at least one alternative wireless network (32), and a processor coupled to the wireless transceiver. The transceiver can be programmed to monitor (44 or 52) signal quality, location or cost on the primary wireless network or on the alternative wireless network and request (48) to carry traffic on the primary wireless network or the alternative wireless network. The system can be further programmed to request (54) canceling forwarded calls to the alternative wireless network transceiver portion when the signal quality on the primary wireless network reaches above the predetermined threshold and to transfer calls back to the primary wireless network when the signal quality on the primary wireless network reaches above the predetermined threshold and optionally power down (56) the alternative wireless network transceiver.
    • 多协议电话呼叫路由系统(10)和方法(40)可以包括能够在主无线网络(24)和至少一个替代无线网络(32)上操作的无线收发器(22),以及耦合 到无线收发器。 收发器可以编程为在主无线网络或替代无线网络上监视(44或52)信号质量,位置或成本,并请求(48)在主无线网络或替代无线网络上携带流量。 当主要无线网络上的信号质量达到预定阈值以上并且当信号质量接通时将呼叫转移回主要无线网络,该系统可以被进一步编程为请求(54)取消转接呼叫到替代无线网络收发器部分 主无线网络达到高于预定阈值并且可选地关闭(56)替代无线网络收发器。
    • 2. 发明授权
    • Method and apparatus for controlling illumination of a display in a portable wireless communication device
    • 用于控制便携式无线通信设备中的显示器的照明的方法和装置
    • US07453219B2
    • 2008-11-18
    • US10608309
    • 2003-06-27
    • Tal MorErel Tal
    • Tal MorErel Tal
    • H05B37/02H04B1/38
    • H04W52/027G09G3/3406G09G2320/062G09G2320/0626G09G2360/144Y02D70/00
    • A portable wireless communication device having a display screen, a light source that is capable of illuminating the display screen, and a processor coupled to the light source, dynamically adjusts a period of time during which the display screen is illuminated. The processor couples power to the light source to illuminate the display screen, determines at least one illumination time parameter associated with information to be displayed on the display screen, and maintains a coupling of power to the light source for a period of time that is based on the at least one illumination time parameter. In other embodiments of the present invention, the processor may further determine to not illuminate the display screen, or to terminate illumination of the display screen prior to expiration of the period of time, based on a received instruction or a detected level of ambient light.
    • 具有显示屏,能够照亮显示屏的光源和耦合到光源的处理器的便携式无线通信设备动态地调节显示屏被照亮的时间段。 处理器将电源耦合到光源以照亮显示屏幕,确定与将要显示在显示屏幕上的信息相关联的至少一个照明时间参数,并且保持与光源的功率耦合一段基于时间的时间段 在所述至少一个照明时间参数上。 在本发明的其它实施例中,处理器可以基于所接收的指令或检测到的环境光的水平,进一步确定不照亮显示屏幕,或者在该时间段期满之前终止显示屏幕的照明。
    • 6. 发明授权
    • Algorithmic cooling
    • 算法冷却
    • US06873154B2
    • 2005-03-29
    • US10462580
    • 2003-06-16
    • Tal MorVwani RoychowdhurySeth LloydJose Manuel FernandezYossi Weinstein
    • Tal MorVwani RoychowdhurySeth LloydJose Manuel FernandezYossi Weinstein
    • G01R33/46G01V3/00
    • G01R33/4608
    • A method for decreasing entropy of a quantum system, for example nuclear spins. The quantum system comprising at least two subsystems, a first subsystem of elements with a first relaxation time (hereinafter—computation elements) and a second subsystem of elements with a second relaxation time (hereinafter—reset elements), the second relaxation time being shorter than the first relaxation time. The method comprises adiabatically decreasing the entropy of the computation elements in the system (by entropy compression, entropy transfer, or both) and increasing the entropy of at least some reset elements, so that the entropy of the subgroup of reset elements is overall increased; and waiting for the total entropy of the subgroup of reset elements to decrease, wherein the above two steps are carried out at least once.
    • 一种降低量子系统熵的方法,例如核自旋。 所述量子系统包括至少两个子系统,具有第一弛豫时间的元件的第一子系统(以下称为计算元件)和具有第二弛豫时间的元件的第二子系统(以下称为复位元件),所述第二弛豫时间短于 第一个放松时间。 该方法包括绝对地减小系统中的计算元素(通过熵压缩,熵传递或两者)的熵,并增加至少一些复位元件的熵,使得复位元件子组的熵总体上增加; 并等待复位元件子组的总熵减小,其中上述两个步骤至少执行一次。